Cogging torque calculation considering magnetic anisotropy for permanent magnet synchronous motors

Author:

Yamaguchi Shinichi,Daikoku Akihiro,Takahashi Norio

Abstract

This paper describes the cogging torque of the permanent magnet synchronous (PM) motors due to the magnetic anisotropy of motor core. The cogging torque due to the magnetic anisotropy is calculated by the finite element method using two kinds of modeling methods: one is the 2D magnetization property method, and the other is the conventional method. As a result, the PM motors with parallel laminated core show different cogging torque waveform from the PM motors with the rotational laminated core due to the influence of the magnetic anisotropy. The amplitudes of the cogging torque are different depending on the modeling methods in the region of high flux density.

Publisher

Emerald

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications

Reference3 articles.

1. Daikoku, A. and Yamaguchi, S. (2002), “Design of tooth‐wound permanent magnet synchronous motors for reducing torque ripples”, ICEM2002, No. 359.

2. Fujiwara, K., Adachi, T. and Takahashi, N. (2002), “A proposal of finite‐element analysis considering two‐dimensional magnetic properties”, IEEE Trans. Magn., Vol. 38 No. 2, pp. 889‐92.

3. Nakata, T., Fujiwara, K., Takahashi, N., Nakano, N. and Okamoto, N. (1994), “An improved numerical analysis of flux distributions in anisotropic material”, IEEE Trans. Magn., Vol. 30 No. 5, pp. 3395‐8.

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